(50%) Problem 1: A particle of mass m is subject to a conservative force that acts in the x direction: F = F,î The associated potential function is shown in the graph. 1.0 3.0 5.0 x(m) 0.0 2.0 4.0 33% Part (a) What is the x component, in newtons, of the force when the particle is positioned at x =0.12 m? 33% Part (b) What is the x component, in newtons, of the force when the particle is positioned at x =2.58 m? 33% Part (c) What is the x component, in newtons, of the force when the particle is positioned at x =4.85 m? Fx = || N (r)a 200. 0.0 100. 300.

University Physics Volume 1
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ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter8: Potential Energy And Conservation Of Energy
Section: Chapter Questions
Problem 50P: A particle of mass 0.50 kg moves along the x -axis with a potential energy whose dependence on x is...
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(50%) Problem 1: A particle of mass m is subject to a conservative force that acts in the x direction:
F = F,î
The associated potential function is shown in the graph.
5.0 x(m)
0.0
1.0
2.0
3.0
4.0
I A 33% Part (a) What is the x component, in newtons, of the force when the particle is positioned at x =0.12 m?
E A 33% Part (b) What is the x component, in newtons, of the force when the particle is positioned at x =2.58 m?
P A 33% Part (c) What is the x component, in newtons, of the force when the particle is positioned at x =4.85 m?
Fx =
*008
*007
*001
0'0
(r)n
Transcribed Image Text:(50%) Problem 1: A particle of mass m is subject to a conservative force that acts in the x direction: F = F,î The associated potential function is shown in the graph. 5.0 x(m) 0.0 1.0 2.0 3.0 4.0 I A 33% Part (a) What is the x component, in newtons, of the force when the particle is positioned at x =0.12 m? E A 33% Part (b) What is the x component, in newtons, of the force when the particle is positioned at x =2.58 m? P A 33% Part (c) What is the x component, in newtons, of the force when the particle is positioned at x =4.85 m? Fx = *008 *007 *001 0'0 (r)n
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